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Mineral inclusions in diamonds may be synchronous but not syngenetic

机译:钻石中的矿物包裹体可能是同步的但不是同生的

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摘要

It is widely assumed that mineral inclusions and their host diamonds are ‘syngenetic' in origin, which means that they formed simultaneously and from the same chemical processes. Mineral inclusions that, instead, were formed earlier with respect to diamonds are termed protogenetic. However, minerals can have the same age as the diamonds in that they become enclosed in and isolated from any further isotopic exchange. But this is termed ‘synchronous' not ‘syngenetic'. Here we demonstrate conclusively the protogenesis of inclusions in diamonds, based upon data from an exceptional fragment of a diamond-bearing peridotite, its clinopyroxene and a gem-quality diamond. Clinopyroxenes in the xenolith had the same chemistry and crystallographic orientation as those for inclusions in the diamond. With our results with garnets, olivines and sulfides, we can state that a major portion of the mineral inclusions in non-coated, monocrystalline-lithospheric diamonds are protogenetic. Our discovery here presented has implications for all genetic aspects of diamond growth, including their ages.
机译:人们普遍认为,矿物包裹体及其主体钻石的起源是“同生的”,这意味着它们是同时形成的,并且来自相同的化学过程。取而代之的是相对于钻石而言较早形成的矿物包裹体,称为原生质。但是,矿物可以与钻石具有相同的年龄,因为它们被封闭在任何进一步的同位素交换中并与之隔离。但这被称为“同步”而不是“同质”。在这里,我们根据含钻石橄榄岩,其斜辉石和宝石级钻石的特殊碎片的数据,最终证明了钻石中夹杂物的形成。异种岩中的亚斜辉石具有与金刚石中的夹杂物相同的化学和晶体学取向。根据我们对石榴石,橄榄石和硫化物的研究结果,我们可以得出结论,未镀膜的单晶岩圈金刚石中的大部分矿物包裹体是原生的。我们在这里提出的发现对钻石生长的所有遗传方面都具有影响,包括年龄。

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